非正交多址系统的消emf上行资源分配方案

M. Jamshed, O. Amjad, F. Héliot, T. Brown
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引用次数: 1

摘要

随着用户数量的增加和多媒体业务对数据速率的要求越来越高,对高容量/带宽、低延迟和高服务质量(QoS)提出了更高的要求。反过来,其中一些需求已经/将导致部署许多新的接入点。鉴于无线通信系统利用射频(RF)波来运行,更多的用户和更多的接入点意味着更多的电磁场(EMF)暴露。与此同时,由于这些系统的日益普及和传输功率的增加,接触电磁场可能造成的健康后果正逐渐成为一个主要问题。为了减少无线通信系统的EMF暴露,我们设计了一种优化方案,以最大限度地减少非正交多址(NOMA)系统上行链路中用户的EMF暴露,同时满足每个用户可接受的QoS。我们将EMF最小化策略定义为一个凸优化问题,并通过为每个用户分配比特来迭代求解。每个子载波被策略地分配给干扰最小的用户组,并使用经典的二叉搜索算法找到子载波。仿真结果表明,与文献中最先进的技术相比,我们提出的策略在满足QoS约束的同时,在EMF暴露方面至少降低了1个数量级。
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EMF-reduction Uplink Resource Allocation Scheme for Non-Orthogonal Multiple Access Systems
The increasing number of users and the demand for higher data rate due to multimedia services, requires high capacity/bandwidth, low latency and high quality of service (QoS). In turn, some of these requirements have/will lead to the deployment of numerous new access points. Given that wireless communication systems utilize radio frequency (RF) waves to operate, more users and more access points imply more electromagnetic field (EMF) exposure. Meanwhile, the possible health consequences of EMF exposure from these systems are progressively becoming a major concern due to their ever growing ubiquity and increased transmission power. In an endeavor to reduce the EMF exposure due to wireless communication systems, we design an optimization scheme for minimizing the EMF exposure of users in the uplink of non-orthogonal multiple access (NOMA) systems, while satisfying each user with an acceptable QoS. We define EMF minimization strategy as a convex optimization problem and iteratively solve it by assigning bits to each user. Each subcarrier is strategically allocated to a group of users having minimum interference and is found by using the classic binary search algorithm. Simulation results depict that our proposed strategy provides a reduction of at least 1 order of magnitude in terms of EMF exposure, while satisfying QoS constraints, in comparison with the state-of-art techniques in the literature.
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